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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Age and geochemistry of the intrusive rocks from the Shaquanzi-Hongyuan Pb–Zn mineral district: Implications for the Late Carboniferous tectonic setting and Pb–Zn mineralization in the Eastern Tianshan, NW China
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Age and geochemistry of the intrusive rocks from the Shaquanzi-Hongyuan Pb–Zn mineral district: Implications for the Late Carboniferous tectonic setting and Pb–Zn mineralization in the Eastern Tianshan, NW China

机译:Shaquanzi-Hongyuan PB-ZN矿区侵入性岩石的年龄和地球化学:对天山东部石炭系构造和PB-ZN矿化的影响:NW中国

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摘要

AbstractThe Central Tianshan Terrane (CTT) in the Eastern Tianshan (Xinjiang, NW China) is an important Pb–Zn metallogenic belt and played a pivotal role in crustal evolution and collisional tectonics of the southern Central Asian Orogenic Belt. The Shaquanzi gabbro and Hongyuan granodiorite are located in the northern margin of the CTT and associated with Pb–Zn mineralization. Zircon U–Pb dating yielded weighted mean ages of 307.2±1.5Ma and 301.2±1.5Ma for the Shaquanzi gabbro and the Hongyuan granodiorite, respectively. These rocks are medium-K calc-alkaline series and enriched in large ion lithophile elements (LILEs; e.g., K, Rb, Ba) and depleted in high field strength elements (HFSEs; e.g., Nb, Ta, Ti), displaying typical arc affinities.The Shaquanzi gabbro shows low Nb/Ta (11.0–14.2), a high Mg#range (56–59), positive zirconεHf(t) (+3.30?+7.26) and whole rockεNd(t) (+0.70?+1.38) values, and lowISrratios (0.704858–0.705137), which indicate that the protolith was probably derived from the sub-continental lithospheric mantle that had been metasomatized by subduction-related fluids. The Hongyuan granodiorite contains hornblende but lack of Al-rich minerals and has lowISrratios (0.704769–0.706211<0.707), suggesting an I-type origin. Moreover, the Hongyuan granodiorite has positiveεHf(t) (+1.12?+5.57) andεNd(t) (+0.38?+1.86) values, with high Mg#(52), variable Nb/Ta ratios (12.6–12.9), low contents of Ni, Cr and Co and Pb isotopes (206Pb/204Pb=17.461–18.299,207Pb/204Pb=15.541–15.581,208Pb/204Pb=37.456–38.129), suggesting the Hongyuan granodiorite was generated by partial melting of juvenile crust sources mixed with some mantle-derived materials.Combined published works with our new geochronological, geological, geochemical and isotopic data, we propose that the CTT may have evolved from a continental arc to a syn-collisional setting during the period of ca. 307–301Ma. The continuing southward subduction of the Junggar oceanic slab beneath the CTT in the Late Carboniferous resulted in extensive arc-related volcanic rocks emplacement that had indirect links to the Pb–Zn mineralization (e.g., reworked/upgraded).Highlights?Shaquanzi-Hongyuan intrusions were emplaced at 307 and 301Ma, respectively.?The Central Tianshan Terrane evolved from a continental arc to a syn-collisional setting during the Late Carboniferous.?A potential Late Carboniferous Pb-Zn (–Ag) metallogenic belt existe
机译:<![cdata [ 抽象 天山中部(CTT)在天山东部(新疆,NW中国)是一个重要的PB-Zn成矿皮带并在南部中亚造山带的地壳演化和碰撞构造中发挥了枢轴作用。邵泉子·戈布罗和宏源Granodiorite位于CTT的北边缘,与PB-Zn矿化相关。锆石U-PB的约会分别产生加权平均值307.2±1.5mA和邵泉省赣硼和宏源甘油石的301.2±1.5mA。这些岩石是中-K钙碱系列,并富含大离子碎石元件(leil;例如,k,rb,ba)并在高场强元件(Hfses;例如,Nb,Ta,Ti)中耗尽,显示典型的弧形亲和力。 shaquanzi gabbro显示低Nb / ta(11.0-14.2),高mg 范围(56-59),阳性zircon ε hf ( t)(+3.30?+7.26)和整个岩石ε nd (t)(+0.70?+1.38 )值,低 I SR 比率(0.704858-0.705137),表明促果蝇可能来自于此通过俯冲相关的液体弥思的亚欧型岩石罩。宏源Granodiorite含有Hornblende但缺乏富含铝矿物质,并且具有低 I SR 比率(0.704769-0.706211 < 0.707),建议I型原点。此外,宏源Granodiorite有阳性ε hf (t)(+1.12?+5.57)和ε nd (t)(+0.38?+1.86)值,高mg (52),可变Nb / ta比(12.6-12.9),Ni,Cr和Co和Pb同位素的低含量( 206 pb / 204 pb = 17.461-18.299, 207 pb / 204> 204 pb = 15.541-15.581, 208 pb / 204 < /CE:SUP = 37.456-38.129),建议通过与一些披风衍生材料混合的少年壳体来源的部分熔化产生宏源Granodiorite。 合并的已发布的作品与我们的新地理学,地质,地球化学和同位素数据,我们建议CTT可能已经从大陆弧传递到加利福尼亚时期的同步凝聚。 307-301ma。在后期石油中的CTT下沿着Junggar海洋板块的南部俯冲产生了广泛的电弧相关的火山岩蓄电池,其具有间接链接到PB-Zn矿化(例如,重新加工/升级)。 亮点 <列表项目ID =“Li0005”> Shaquanzi-Hong源入侵分别在307和301MA中置于307和301mA 。 天山地区的中央弧形在后期石炭系期间从大陆弧到一个同步环境。 存在潜在的晚期石炭纪PB-Zn(-Ag)成矿带

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  • 作者单位

    Key Laboratory of Mineralogy and Metallogeny Guangzhou Institute of Geochemistry Chinese Academy of Sciences;

    Key Laboratory of Mineralogy and Metallogeny Guangzhou Institute of Geochemistry Chinese Academy of Sciences;

    Key Laboratory of Mineralogy and Metallogeny Guangzhou Institute of Geochemistry Chinese Academy of Sciences;

    Key Laboratory of Mineralogy and Metallogeny Guangzhou Institute of Geochemistry Chinese Academy of Sciences;

    Key Laboratory of Mineralogy and Metallogeny Guangzhou Institute of Geochemistry Chinese Academy of Sciences;

    School of Marine Sciences Sun Yat-sen University;

    Wuhan Institute of Geology and Mineral Resources China Geological Survey;

    Key Laboratory of Mineralogy and Metallogeny Guangzhou Institute of Geochemistry Chinese Academy of Sciences;

    Key Laboratory of Mineralogy and Metallogeny Guangzhou Institute of Geochemistry Chinese Academy of Sciences;

    Key Laboratory of Mineralogy and Metallogeny Guangzhou Institute of Geochemistry Chinese Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

    Eastern Tianshan; Shaquanzi-Hongyuan Pb–Zn deposits; Geochemistry; Late Carboniferous;

    机译:东天山;陕北 - 宏源PB-ZN矿床;地球化学;晚石炭系;

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